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Shengchun Liu

Researcher at Tianjin University of Commerce

Publications -  63
Citations -  1504

Shengchun Liu is an academic researcher from Tianjin University of Commerce. The author has contributed to research in topics: Subcooling & Coefficient of performance. The author has an hindex of 16, co-authored 52 publications receiving 851 citations. Previous affiliations of Shengchun Liu include University of Tokyo & Tianjin University.

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Environmental and economical analyses of transcritical CO2 heat pump combined with direct dedicated mechanical subcooling (DMS) for space heating in China

TL;DR: In this paper, an environmental and economical assessment model is developed, in order to evaluate the performances of transcritical CO2 heat pump system with dedicated mechanical subcooling (CO2 HPDMS).
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Performance investigation of transcritical carbon dioxide two-stage compression cycle with expander

TL;DR: In this paper, three different variations of transcritical carbon dioxide two-stage compression cycles with expanders are investigated by using thermodynamics analysis, and the performance of the TCOP cycle and the single stage compression with expander (SCE) cycle is mainly discussed and compared for a wide operating condition.
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Energy and exergy analysis of low GWP refrigerants in cascade refrigeration system

TL;DR: In this paper, energy and exergy analysis were conducted to evaluate the potential of refrigerant and find out which refrigerant couple performs better in cascade refrigeration system (CRS), and the results provided a theoretical basis for the selection of low-GWP refrigerant couples in CRS.
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Energetic, economic and environmental analysis of air source transcritical CO2 heat pump system for residential heating in China

TL;DR: Using air source heat pump system for residential heating is a practical way to replace coal-fired boiler in China to alleviate the haze problem, and CO2 is a promising candidate to replace hydroch...
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Comparative analysis of thermodynamic performance of a cascade refrigeration system for refrigerant couples R41/R404A and R23/R404A

TL;DR: In this paper, a comparative analysis of thermodynamic performance of cascade refrigeration systems (CRSs) for refrigerant couples R41/R404A and R23/R 404A to discover whether R41 is a suitable substitute for R23 is presented.